Department of Physiology, Michigan State University, East Lansing, MI, USA.
Department of Physiology, Michigan State University, 2194 BPS Building, 567 Wilson Road, East Lansing, MI, 48824, USA.
Sci Rep. 2020 Oct 21;10(1):17948. doi: 10.1038/s41598-020-74877-1.
The E2F family, classically known for a central role in cell cycle, has a number of emerging roles in cancer including angiogenesis, metabolic reprogramming, metastasis and DNA repair. E2F1 specifically has been shown to be a critical mediator of DNA repair; however, little is known about DNA repair and other E2F family members. Here we present an integrative bioinformatic and high throughput drug screening study to define the role of E2F2 in maintaining genomic integrity in breast cancer. We utilized in vitro E2F2 ChIP-chip and over expression data to identify transcriptional targets of E2F2. This data was integrated with gene expression from E2F2 knockout tumors in an MMTV-Neu background. Finally, this data was compared to human datasets to identify conserved roles of E2F2 in human breast cancer through the TCGA breast cancer, Cancer Cell Line Encyclopedia, and CancerRx datasets. Through these methods we predict that E2F2 transcriptionally regulates mediators of DNA repair. Our gene expression data supports this hypothesis and low E2F2 activity is associated with a highly unstable tumor. In human breast cancer E2F2, status was also correlated with a patient's response to PARP inhibition therapy. Taken together this manuscript defines a novel role of E2F2 in cancer progression beyond cell cycle and could impact patient treatment.
E2F 家族,经典地被认为在细胞周期中起核心作用,在癌症中具有许多新的作用,包括血管生成、代谢重编程、转移和 DNA 修复。E2F1 特别被证明是 DNA 修复的关键介质;然而,关于 DNA 修复和其他 E2F 家族成员的了解甚少。在这里,我们提出了一个综合的生物信息学和高通量药物筛选研究,以确定 E2F2 在维持乳腺癌基因组完整性中的作用。我们利用体外 E2F2 ChIP-chip 和过表达数据来鉴定 E2F2 的转录靶标。将该数据与 MMTV-Neu 背景下 E2F2 敲除肿瘤的基因表达数据进行整合。最后,通过 TCGA 乳腺癌、癌症细胞系百科全书和癌症 Rx 数据集,将该数据与人类数据集进行比较,以确定 E2F2 在人类乳腺癌中的保守作用。通过这些方法,我们预测 E2F2 转录调节 DNA 修复的介质。我们的基因表达数据支持这一假设,低 E2F2 活性与高度不稳定的肿瘤相关。在人类乳腺癌中,E2F2 的状态也与患者对 PARP 抑制治疗的反应相关。总之,本文定义了 E2F2 在癌症进展中的一个新作用,超越了细胞周期,可能会影响患者的治疗。